A quarter-automobile active suspension model was proposed. High speed on/off solenoid valves were used as control valves and fuzzy control was chosen as control method . Based on force analyses of system parts, a math...A quarter-automobile active suspension model was proposed. High speed on/off solenoid valves were used as control valves and fuzzy control was chosen as control method . Based on force analyses of system parts, a mathematical model of the active suspension system was established and simplified by linearization method. Simulation study was conducted with Matlab and three scale coefficients of fuzzy controller (ke, kec, ku) were acquired. And an experimental device was designed and produced. The results indicate that the active suspension system can achieve better vibration isolation performance than passive suspension system, the displacement amplitude of automobile body can be reduced to 55%. Fuzzy control is an effective control method for active suspension system.展开更多
针对空气悬架控制中的问题,采用Fuzzy-PID复合控制技术,即把模糊推理运用于PID参数的整定,对半主动空气悬架加以研究。设计了Fuzzy-PID控制器,用于半主动空气悬架1/4车辆模型控制的Matlab/Simulink仿真模拟和台架试验。仿真模型中借助S...针对空气悬架控制中的问题,采用Fuzzy-PID复合控制技术,即把模糊推理运用于PID参数的整定,对半主动空气悬架加以研究。设计了Fuzzy-PID控制器,用于半主动空气悬架1/4车辆模型控制的Matlab/Simulink仿真模拟和台架试验。仿真模型中借助S函数和Fuzzy Inference System Toolbox构建Fuzzy-PID模块,仿真结果表明:与传统的PID控制仿真比较,该控制策略下的半主动空气悬架能降低簧上质量加速度和悬架动行程,具有较好的鲁棒性,使车辆平顺性有一定程度的提高。台架试验与仿真结果基本吻合。展开更多
在建立整车磁流变减振器(MRD)半主动悬架模型基础上,利用八板块方法设计了整车的变论域控制策略。基于重构的标准B级和C级路面激励信号,分别在10、20和30 m/s 3个车速下进行了整车在直线和转向行驶工况下的仿真研究。在完成试验车辆...在建立整车磁流变减振器(MRD)半主动悬架模型基础上,利用八板块方法设计了整车的变论域控制策略。基于重构的标准B级和C级路面激励信号,分别在10、20和30 m/s 3个车速下进行了整车在直线和转向行驶工况下的仿真研究。在完成试验车辆改装基础上,进行了大量台架和道路工况下的试验。仿真和试验结果显示,所设计的半主动悬架和控制策略可以有效地提高车辆行驶的平顺性,磁流变半主动悬架与被动悬架相比振动强度可降低9%~22%,结果表明所建立的模型和控制策略是可行的。展开更多
文摘A quarter-automobile active suspension model was proposed. High speed on/off solenoid valves were used as control valves and fuzzy control was chosen as control method . Based on force analyses of system parts, a mathematical model of the active suspension system was established and simplified by linearization method. Simulation study was conducted with Matlab and three scale coefficients of fuzzy controller (ke, kec, ku) were acquired. And an experimental device was designed and produced. The results indicate that the active suspension system can achieve better vibration isolation performance than passive suspension system, the displacement amplitude of automobile body can be reduced to 55%. Fuzzy control is an effective control method for active suspension system.
文摘针对空气悬架控制中的问题,采用Fuzzy-PID复合控制技术,即把模糊推理运用于PID参数的整定,对半主动空气悬架加以研究。设计了Fuzzy-PID控制器,用于半主动空气悬架1/4车辆模型控制的Matlab/Simulink仿真模拟和台架试验。仿真模型中借助S函数和Fuzzy Inference System Toolbox构建Fuzzy-PID模块,仿真结果表明:与传统的PID控制仿真比较,该控制策略下的半主动空气悬架能降低簧上质量加速度和悬架动行程,具有较好的鲁棒性,使车辆平顺性有一定程度的提高。台架试验与仿真结果基本吻合。
文摘在建立整车磁流变减振器(MRD)半主动悬架模型基础上,利用八板块方法设计了整车的变论域控制策略。基于重构的标准B级和C级路面激励信号,分别在10、20和30 m/s 3个车速下进行了整车在直线和转向行驶工况下的仿真研究。在完成试验车辆改装基础上,进行了大量台架和道路工况下的试验。仿真和试验结果显示,所设计的半主动悬架和控制策略可以有效地提高车辆行驶的平顺性,磁流变半主动悬架与被动悬架相比振动强度可降低9%~22%,结果表明所建立的模型和控制策略是可行的。